Disease-related Huntingtin seeding activities in cerebrospinal fluids of Huntington’s disease patients

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作者
C. Y. Daniel Lee
Nan Wang
Koning Shen
Matthew Stricos
Peter Langfelder
Kristina H. Cheon
Etty P. Cortés
Harry V. Vinters
Jean Paul Vonsattel
Nancy S. Wexler
Robert Damoiseaux
Judith Frydman
X. William Yang
机构
[1] University of California,Center for Neurobehavioral Genetics, The Jane and Terry Semel Institute for Neuroscience & Human Behavior
[2] Los Angeles,Department of Psychiatry and Biobehavioral Sciences
[3] David Geffen School of Medicine at UCLA,Department of Biology and BioX Program
[4] Stanford University,Division of Aging and Dementia, Department of Neurology
[5] Columbia University Medical Center,Department of Pathology and Laboratory Medicine, Neurology
[6] David Geffen School of Medicine at UCLA,Departments of Neurology and Psychiatry, College of Physicians and Surgeons
[7] Columbia University,California NanoSystems Institute
[8] Hereditary Disease Foundation,Department of Molecular and Medical Pharmacology
[9] University of California,Department of Molecular and Cell Biology
[10] University of California,undefined
[11] UC Berkeley,undefined
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摘要
In Huntington’s disease (HD), the mutant Huntingtin (mHTT) is postulated to mediate template-based aggregation that can propagate across cells. It has been difficult to quantitatively detect such pathological seeding activities in patient biosamples, e.g. cerebrospinal fluids (CSF), and study their correlation with the disease manifestation. Here we developed a cell line expressing a domain-engineered mHTT-exon 1 reporter, which showed remarkably high sensitivity and specificity in detecting mHTT seeding species in HD patient biosamples. We showed that the seeding-competent mHTT species in HD CSF are significantly elevated upon disease onset and with the progression of neuropathological grades. Mechanistically, we showed that mHTT seeding activities in patient CSF could be ameliorated by the overexpression of chaperone DNAJB6 and by antibodies against the polyproline domain of mHTT. Together, our study developed a selective and scalable cell-based tool to investigate mHTT seeding activities in HD CSF, and demonstrated that the CSF mHTT seeding species are significantly associated with certain disease states. This seeding activity can be ameliorated by targeting specific domain or proteostatic pathway of mHTT, providing novel insights into such pathological activities.
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